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Fabrication Flow Control and Applications of Microfluidic Paper-Based Analytical Devices

机译:微流体纸基分析设备的制造流量控制和应用

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摘要

Paper-based microfluidic devices have advanced significantly in recent years as they are affordable, automated with capillary action, portable, and biodegradable diagnostic platforms for a variety of health, environmental, and food quality applications. In terms of commercialization, however, paper-based microfluidics still have to overcome significant challenges to become an authentic point-of-care testing format with the advanced capabilities of analyte purification, multiplex analysis, quantification, and detection with high sensitivity and selectivity. Moreover, fluid flow manipulation for multistep integration, which involves valving and flow velocity control, is also a critical parameter to achieve high-performance devices. Considering these limitations, the aim of this review is to (i) comprehensively analyze the fabrication techniques of microfluidic paper-based analytical devices, (ii) provide a theoretical background and various methods for fluid flow manipulation, and (iii) highlight the recent detection techniques developed for various applications, including their advantages and disadvantages.
机译:纸基微流控设备近年来取得了长足的进步,因为它们价格合理,具有毛细作用自动执行,便携式且可生物降解的诊断平台,可用于各种健康,环境和食品质量应用。然而,就商业化而言,纸基微流控技术仍需要克服重大挑战,才能成为具有真正意义上的即时检验测试格式,并具有高灵敏度和高选择性的分析物纯化,多重分析,定量和检测功能。此外,用于多步集成的流体流量操纵(包括阀门和流速控制)也是实现高性能设备的关键参数。考虑到这些局限性,本综述的目的是(i)全面分析基于微流体纸的分析设​​备的制造技术,(ii)提供用于流体流动操纵的理论背景和各种方法,并且(iii)强调最近的检测针对各种应用开发的技术,包括其优缺点。

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